A combined continuous-discontinuous approach for failure process of quasi-brittle materials

被引:0
作者
CHANG XiaoLin
HU Chao
ZHOU Wei
MA Gang
ZHANG Chao
机构
[1] StateKeyLaboratoryofWaterResourcesandHydropowerEngineeringScience,WuhanUniversity
关键词
quasi-brittle materials; deformable discrete elements; cohesive zone model; crack propagation;
D O I
暂无
中图分类号
TU528.01 [基础理论];
学科分类号
0805 ; 080502 ; 081304 ;
摘要
Rock,concrete and other geo-materials,due to the presence of microstructural inhomogeneity,their fracture processes and damage characteristics are associated with the distribution of micro-cracks contained in the materials.In this study,by introducing a cohesive zone model based on fracture mechanics into the framework of deformable discrete element method,a continuous-discontinuous coupling analysis approach for simulating the fracture of quasi-brittle materials is proposed.The cohesive interface elements are inserted into certain engineering or research region.It is assumed that damage and fracture occur only in the interface elements,while bulk material is modeled to be elastic.The Mohr-Coulomb criterion with tension cut-off is adopted as the damage initiation criterion,and a scalar damage variable representing damage in the material is used to describe the rate at which the material stiffness is degraded.Cracks are simulated explicitly by the failure of the interface elements.Numerical simulations are performed in order to validate the suggested method.Partial applications are also listed.The results show that this method provides a simple but effective tool for the simulation of crack initiation and propagation,and it can reflect the whole process of quasi-brittle materials from small deformation to large deformation and failure.
引用
收藏
页码:550 / 559
页数:10
相关论文
共 50 条
[21]   Ubiquitiformal Crack Extension in Quasi-Brittle Materials [J].
Ou, Zhuo-Cheng ;
Ju, Yi-Bo ;
Li, Jing-Yan ;
Duan, Zhuo-Ping ;
Huang, Feng-Lei .
ACTA MECHANICA SOLIDA SINICA, 2020, 33 (05) :674-691
[22]   A Rate Independent Cohesive Zone Model for Modeling Failure in Quasi-Brittle Materials [J].
Kumar, Nitin ;
Rajagopal, Amirtham ;
Pandey, Manoj .
MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2015, 22 (08) :681-696
[23]   Failure analysis of quasi-brittle materials involving multiple mechanisms on fractured surfaces [J].
Ishii, Tateki ;
Terada, Kenjiro ;
Kyoya, Takashi .
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 2006, 67 (07) :960-988
[24]   Structural failure prediction of quasi-brittle structures: Modeling and simulation [J].
da Costa-Mattos, Heraldo ;
Pires-Domingues, Stella Maris ;
Rochinha, Femando Alves .
COMPUTATIONAL MATERIALS SCIENCE, 2009, 46 (02) :407-417
[25]   A unified nonlocal method for capturing discontinuous and multi-physical behaviors of quasi-brittle materials [J].
Yu, Haitao ;
Chen, Xizhuo ;
Sun, Yuqi ;
Hu, Xiaokun .
STRUCTURAL CONCRETE, 2023, 24 (06) :7591-7602
[26]   Cellular Automata to Simulate Crack Propagation of Quasi-brittle Materials [J].
He Junlian ;
Li Mingtian .
ADVANCES IN CIVIL ENGINEERING, PTS 1-4, 2011, 90-93 :748-751
[27]   The fracture process in quasi-brittle materials simulated using a lattice dynamical model [J].
Birck, Gabriel ;
Rinaldi, Antoniox ;
Iturrioz, Ignacio .
FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2019, 42 (12) :2709-2724
[28]   An alternative bilinear peridynamic model to simulate the damage process in quasi-brittle materials [J].
Rossi Cabral, Nestor ;
Agustina Invaldi, Maria ;
Barrios D'Ambra, Ricardo ;
Iturrioz, Ignacio .
ENGINEERING FRACTURE MECHANICS, 2019, 216
[29]   A novel three dimensional failure criterion for quasi-brittle materials based on multi-scale damage approach [J].
Ren, Lu ;
Lv, Zhao-Min ;
Niu, Fu-Jun ;
Qin, Zi-Peng ;
Zhao, Lun-Yang .
MECHANICS OF MATERIALS, 2024, 198
[30]   Hysteretic deteriorating model for quasi-brittle materials based on micromechanical damage approach [J].
Ren, Xiaodan ;
Li, Jie .
INTERNATIONAL JOURNAL OF NON-LINEAR MECHANICS, 2011, 46 (01) :321-329